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鸟类及其恐龙祖先的身体形状和质量分布的解耦。

Decoupling body shape and mass distribution in birds and their dinosaurian ancestors.

机构信息

Department of Musculoskeletal & Ageing Science, Institute of Life Course & Medical Sciences, University of Liverpool, William Henry Duncan Building, 6 West Derby Street, Liverpool, L7 8TX, UK.

Department of Life Sciences, School of Life Sciences, University of Lincoln, Joseph Banks Laboratories, Green Lane, Lincoln, LN6 7DL, UK.

出版信息

Nat Commun. 2023 Mar 22;14(1):1575. doi: 10.1038/s41467-023-37317-y.

Abstract

It is accepted that non-avian theropod dinosaurs, with their long muscular tails and small forelimbs, had a centre-of-mass close to the hip, while extant birds, with their reduced tails and enlarged wings have their mass centred more cranially. Transition between these states is considered crucial to two key innovations in the avian locomotor system: crouched bipedalism and powered flight. Here we use image-based models to challenge this dichotomy. Rather than a phylogenetic distinction between 'dinosaurian' and 'avian' conditions, we find terrestrial versus volant taxa occupy distinct regions of centre-of-mass morphospace consistent with the disparate demands of terrestrial bipedalism and flight. We track this decoupled evolution of body shape and mass distribution through bird evolution, including the origin of centre-of-mass positions more advantageous for flight and major reversions coincident with terrestriality. We recover modularity in the evolution of limb proportions and centre-of-mass that suggests fully crouched bipedalism evolved after powered flight.

摘要

人们普遍认为,非鸟兽脚亚目恐龙的长尾和短小前肢,使它们的质心靠近臀部,而现存鸟类的短尾和增大的翅膀则使它们的质心更靠近头部。在这两种状态之间的转变被认为是鸟类运动系统的两个关键创新的关键:蹲伏式两足行走和动力飞行。在这里,我们使用基于图像的模型来挑战这种二分法。我们发现,与其说是“恐龙”和“鸟类”条件之间的系统发育区别,不如说是陆地和飞行的分类群占据了质心形态空间的不同区域,这与陆地两足行走和飞行的不同需求一致。我们通过鸟类进化追踪了身体形状和质量分布的这种解耦进化,包括更有利于飞行的质心位置的起源以及与陆地生活相一致的主要反转。我们发现,肢体比例和质心的进化具有模块化,这表明完全蹲伏的两足行走是在动力飞行之后进化而来的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7571/10033513/90675143c94e/41467_2023_37317_Fig1_HTML.jpg

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